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利用二维电子光谱中的中心线斜率分析测量多能级系统的超快关联动力学

Measuring the Ultrafast Correlation Dynamics of a Multilevel System Using the Center Line Slope Analysis in Two-Dimensional Electronic Spectroscopy.

作者信息

Jana Sanjib, Do Thanh Nhut, Nowakowski Paweł J, Khyasudeen M Faisal, Le Duc Viet, Lim Ian Jing Yan, Prasad Sachin, Zhang Jianjun, Tan Howe-Siang

机构信息

School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, 21 Nanyang Link, 637371 Singapore.

Department of Chemistry, Faculty of Science, Universiti Malaya, 50603 Kuala Lumpur, Malaysia.

出版信息

J Phys Chem B. 2023 Aug 24;127(33):7309-7322. doi: 10.1021/acs.jpcb.3c02521. Epub 2023 Aug 14.

Abstract

In a two-dimensional (2D) optical spectrum of a multilevel system, there are diagonal peaks and off-diagonal cross-peaks that correlate the different levels. The time-dependent properties of these diagonal peaks and cross-peaks contain much information about the dynamics of the multilevel system. The time-dependent diagonal peakshape that depends on the spectral diffusion dynamics of the associated transition and characterized by the frequency-fluctuation correlation function (FFCF) is well studied. However, the time-dependent peakshape of a cross-peak that provides the correlation dynamics between different transitions is much less studied or understood. We derived the third-order nonlinear response functions that describe the cross-peaks in a 2D electronic spectrum of a multilevel system that arise from processes sharing a common ground state and/or from internal conversion and population transfer. We can use the center line slope (CLS) analysis to characterize the cross-peaks in conjunction with the diagonal peaks. This allows us to recover the frequency-fluctuation cross-correlation functions (FXCFs) between two transitions. The FXCF and its subsidiary quantities such as the initial correlation and the initial covariance between different transitions are important for studying the correlation effects between states in complex systems, such as energy-transfer processes. Furthermore, knowledge of how various molecular processes over different timescales affect simultaneously different transitions can also be obtained from the measured FXCF. We validated and tested our derived equations and analysis process by studying, as an example, the 2D electronic spectra of metal-free phthalocyanine in solution. We measured and analyzed the diagonal peaks of the and transitions and the cross-peaks between these two transitions of this multilevel electronic system and obtained the associated FFCFs and FXCFs. In this model system, we measured negative components of FXCF over the tens of picosecond timescale. This suggests that in phthalocyanine, the and transitions coupling with the solvent molecule motion are anticorrelated to each other.

摘要

在多能级系统的二维(2D)光谱中,存在与不同能级相关的对角峰和非对角交叉峰。这些对角峰和交叉峰的时间相关特性包含了关于多能级系统动力学的大量信息。依赖于相关跃迁的光谱扩散动力学并由频率涨落相关函数(FFCF)表征的时间相关对角峰形状已得到充分研究。然而,提供不同跃迁之间相关动力学的交叉峰的时间相关峰形状的研究和理解要少得多。我们推导了三阶非线性响应函数,该函数描述了多能级系统二维电子光谱中由共享公共基态的过程和/或由内转换和布居转移产生的交叉峰。我们可以使用中心线斜率(CLS)分析结合对角峰来表征交叉峰。这使我们能够恢复两个跃迁之间的频率涨落交叉相关函数(FXCF)。FXCF及其附属量,如不同跃迁之间的初始相关性和初始协方差,对于研究复杂系统中态之间的相关效应,如能量转移过程,非常重要。此外,从测量的FXCF中还可以获得关于不同时间尺度上各种分子过程如何同时影响不同跃迁的知识。作为示例,我们通过研究溶液中无金属酞菁的二维电子光谱,验证并测试了我们推导的方程和分析过程。我们测量并分析了该多能级电子系统的 跃迁和 跃迁的对角峰以及这两个跃迁之间的交叉峰,并获得了相关的FFCF和FXCF。在这个模型系统中,我们在几十皮秒的时间尺度上测量到了FXCF的负分量。这表明在酞菁中,与溶剂分子运动耦合的 跃迁和 跃迁彼此反相关。

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